Rebar weight·D10 4m
D10 4m
2.24 kg
0.56 kg/m
9.53 mm · 71.33 mm²

D10 4m rebar — 2.24 kg per bar

A D10 4m bar weighs 2.24 kg. The 0.56 kg/m comes from the 71.33 mm² cross-section of a 9.53 mm nominal diameter times a density of 7850 kg/m³, so 100 bars are 224 kg and a tonne holds 446 bars.

D13 is a name, 12.7 mm is the diameter

The 13 in D13 is a label; the diameter that goes into the formula is 12.7 mm, inherited from a half inch. Feed the label into the formula and you get 1.042 kg/m, 5 % heavier than the standard value of 0.995 kg/m. The same choice is why a ribbed bar can be treated as a smooth cylinder at all: the standard sets the nominal diameter so that it reproduces the real mass.

  • 9.53 mm · 71.33 mm²0.56 kg/m
  • 10 mm0.617 kg/m
Bar size
D10
Length
4 m
Nominal diameter
9.53 mm
Cross-section
71.33 mm²
Weight per metre
0.56 kg/m
Weight per bar
2.24 kg
100 bars
224 kg
Bars per tonne
446
Lap splice
0.3812 m · 0.213 kg
Order weight
235.2 kg

Nearby cells

Same size, other lengths

Same length, other sizes

Worth knowing

  • Weight per metre (kg/m) is π/4 × nominal diameter² × 7850 ÷ 10⁶ — that is the 0.006165 factor.
  • What goes into the formula is the nominal diameter, not the label: D13 means 12.7 mm.
  • Total weight is weight per metre × length × count, and doubling the diameter quadruples the weight.
  • An order adds lap splices, roughly 40 diameters each, and 3 to 5 % for waste.

Common questions

Q. How much does one D10 4m bar weigh?

2.24 kg — 0.56 kg/m times 4 m. Ten bars come to 22.4 kg and a hundred to 224 kg.

Q. How many bars make a tonne?

446. That is 1000 divided by 2.24 kg, and 100 bars weigh 0.224 t. Ordered with 5 % waste, those 100 become 235.2 kg.

Q. Where does 0.56 kg/m come from?

The 71.33 mm² cross-section of a 9.53 mm nominal diameter, converted to m² and multiplied by a density of 7850 kg/m³. Using the label 10 instead would give 0.617 kg/m, which is wrong.